Journal article

The stochastic search dynamics of interneuron migration

JM Britto, LA Johnston, SS Tan

Biophysical Journal | CELL PRESS | Published : 2009

Abstract

Migration is a dynamic process in which a cell searches the environment and translates acquired information into somal advancement. In particular, interneuron migration during development is accomplished by two distinct processes: the extension of neurites tipped with growth cones; and nucleus translocation, termed nucleokinesis. The primary purpose of our study is to investigate neurite branching and nucleokinesis using high-resolution time-lapse confocal microscopy and computational modeling. We demonstrate that nucleokinesis is accurately modeled by a spring-dashpot system and that neurite branching is independent of the nucleokinesis event, and displays the dynamics of a stochastic birth..

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University of Melbourne Researchers

Grants

Funding Acknowledgements

This work was supported by the National Health and Medical Research Council, Australia (to J.M.B. and S.-S.T.) and the Life Sciences initiative of the NICTA Victoria Research Laboratory (to L.A.J.).